Production of yellow‐flowered gentian plants by genetic engineering of betaxanthin pigments

Author:

Nishihara Masahiro1ORCID,Hirabuchi Akiko1,Goto Fumina1ORCID,Nishizaki Yuzo2,Uesugi Shota1ORCID,Watanabe Aiko1ORCID,Tasaki Keisuke13ORCID,Washiashi Rie1,Sasaki Nobuhiro14ORCID

Affiliation:

1. Iwate Biotechnology Research Center 22‐174‐4, Narita Kitakami Iwate 024‐0003 Japan

2. Division of Food Additives National Institute of Health Sciences 3‐25‐26, Tonomachi, Kawasaki‐ku Kawasaki Kanagawa 210‐9501 Japan

3. Department of Agriculture, Faculty of Agriculture Tokyo University of Agriculture 1737, Funako Atsugi Kanagawa 243‐0034 Japan

4. Department of Agricultural Biology, Graduate School of Agriculture Osaka Metropolitan University 1‐1 Gakuen‐cho, Naka‐ku Sakai Osaka 599‐8531 Japan

Abstract

Summary Genetic engineering of flower color provides biotechnological products such as blue carnations or roses by accumulating delphinidin‐based anthocyanins not naturally existing in these plant species. Betalains are another class of pigments that in plants are only synthesized in the order Caryophyllales. Although they have been engineered in several plant species, especially red‐violet betacyanins, the yellow betaxanthins have yet to be engineered in ornamental plants. We attempted to produce yellow‐flowered gentians by genetic engineering of betaxanthin pigments. First, white‐flowered gentian lines were produced by knocking out the dihydroflavonol 4‐reductase (DFR) gene using CRISPR/Cas9‐mediated genome editing. Beta vulgaris BvCYP76AD6 and Mirabilis jalapa MjDOD, driven by gentian petal‐specific promoters, flavonoid 3′,5′‐hydroxylase (F3′5′H) and anthocyanin 5,3′‐aromatic acyltransferase (AT), respectively, were transformed into the above DFR‐knockout white‐flowered line; the resultant gentian plants had vivid yellow flowers. Expression analysis and pigment analysis revealed petal‐specific expression and accumulation of seven known betaxanthins in their petals to c. 0.06–0.08 μmol g FW−1. Genetic engineering of vivid yellow‐flowered plants can be achieved by combining genome editing and a suitable expression of betaxanthin‐biosynthetic genes in ornamental plants.

Funder

Japan Society for the Promotion of Science

Ministry of Agriculture, Forestry and Fisheries

Publisher

Wiley

Subject

Plant Science,Physiology

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